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首页> 外文期刊>ACS nano >Phase diagram, design of monolayer binary colloidal crystals, and their fabrication based on ethanol-assisted self-assembly at the air/water interface
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Phase diagram, design of monolayer binary colloidal crystals, and their fabrication based on ethanol-assisted self-assembly at the air/water interface

机译:相图,单层二元胶体晶体的设计及其在乙醇/空气/水界面的自组装基础上的制备

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摘要

Flexible structural design and accurate controlled fabrication with structural tunability according to need for binary or multicomponent colloidal crystals have been expected. However, it is still a challenge. In this work, the phase diagram of monolayer binary colloidal crystals (bCCs) is established on the assumption that both large and small polystyrene (PS) colloidal spheres can stay at the air/water interface, and the range diagram for the size ratio and number ratio of small to large colloidal spheres is presented. From this phase diagram, combining the range diagram, we can design and relatively accurately control fabrication of the bCCs with specific structures (or patterns) according to need, including single or mixed patterns with the given relative content. Further, a simple and facile approach is presented to fabricate large-area (more than 10 cm ~2) monolayer bCCs without any surfactants, using differently sized PS spheres, based on ethanol-assisted self-assembly at the air/water interface. bCCs with different patterns and stoichiometries are thus designed from the established phase diagram and then successfully fabricated based on the volume ratios (V _(S/L)) of the small to large PS suspensions using the presented colloidal self-assembling method. Interestingly, these monolayer bCCs can be transferred to any desired substrates using water as the medium. This study allows us to design desired patterns of monolayer bCCs and to more accurately control their structures with the used V _(S/L).
机译:期望根据二元或多组分胶体晶体的需求进行灵活的结构设计和具有结构可调性的精确受控的制造。但是,这仍然是一个挑战。在这项工作中,单层二元胶体晶体(bCCs)的相图是在大和小的聚苯乙烯(PS)胶体球都可以停留在空气/水界面的假设以及尺寸比和数量的范围图的假设下建立的给出了小与大胶体球的比例。从该相图,结合范围图,我们可以根据需要设计和相对准确地控制具有特定结构(或图案)的bCC的制造,包括具有给定相对含量的单个或混合图案。此外,基于在空气/水界面处的乙醇辅助自组装,提出了一种简单而简便的方法来制造大面积(大于10 cm〜2)单层bCC,而无需使用任何表面活性剂,而使用不同尺寸的PS球。因此,从已建立的相图中设计出具有不同模式和化学计量比的bCC,然后使用所提出的胶体自组装方法,根据小到大型PS悬浮液的体积比(V _(S / L))成功制造出bCC。有趣的是,可以使用水作为介质将这些单层bCC转移到任何所需的底物上。这项研究使我们能够设计所需的单层bCC模式,并使用所用的V_(S / L)来更准确地控制其结构。

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